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Hydrogen sulfide reformation in the presence of methane

机译:甲烷存在下的硫化氢重整

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This paper provides experimental investigation on the potential of hydrogen production from hydrogen sulfide and methane mixtures in nitrogen. The reformation of H2S in natural gas represents a viable alternative option for the treatment of acid gases extracted from gas wells that contains H2S, CH4 and N-2 in the gases without their separation, using for example, the amine process to remove H2S. A laboratory-scale quartz reactor was used to investigate experimentally the effect of temperature and inlet stream composition on the production of hydrogen from a mixture of hydrogen sulfide and methane diluted in nitrogen. The results reveal the important role of reactor temperature on the decomposition of both hydrogen sulfide and methane as well as the production of hydrogen. The results also showed that the production of hydrogen increased dramatically at temperatures exceeding 1473 K wherein the conversion of hydrogen sulfide is more significant. The methane was consumed at temperatures above 1373 K. The conversion of hydrogen sulfide in presence of methane was higher than that in case of hydrogen sulfide only. The carbon disulfide formed during the reformation process increased with increase in temperature. These results provide favorable reactor operational conditions for the reformation of methane with hydrogen sulfide. These results also provide a viable alternative option for the treatment of various waste streams containing hydrogen sulfide to produce clean hydrogen and sulfur. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提供了关于在氮气中由硫化氢和甲烷混合物产生氢气的潜力的实验研究。天然气中H2S的重整是处理从气井中抽出的酸性气体的可行替代选择,其中酸性气体中不含H2S,CH4和N-2,无需分离即可,例如使用胺法去除H2S。实验室规模的石英反应器用于实验研究温度和进料流组成对由稀释在氮气中的硫化氢和甲烷的混合物生产氢气的影响。结果揭示了反应器温度对硫化氢和甲烷的分解以及氢的产生的重要作用。结果还表明,在超过1473 K的温度下,氢气的产量显着增加,其中硫化氢的转化更为显着。在高于1373 K的温度下消耗了甲烷。在甲烷存在下,硫化氢的转化率高于仅在硫化氢的情况下。在重整过程中形成的二硫化碳随着温度的升高而增加。这些结果为用硫化氢重整甲烷提供了有利的反应器操作条件。这些结果也为处理各种含硫化氢的废物流提供了可行的替代选择,以产生清洁的氢和硫。 (C)2016 Elsevier Ltd.保留所有权利。

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